Literature DB >> 23279478

Chemical composition of lipids present in cat and dog oocyte by matrix-assisted desorption ionization mass spectrometry (MALDI- MS).

M Apparicio1, C R Ferreira, A Tata, V G Santos, A E Alves, G Q Mostachio, E A Pires-Butler, T F Motheo, L C Padilha, E J Pilau, F C Gozzo, M N Eberlin, E G Lo Turco, G C Luvoni, W R R Vicente.   

Abstract

The aim of the present study was to investigate the level of information on the chemical structures and relative abundances of lipids present in cat and dog oocytes by matrix-assisted laser desorption mass spectrometry (MALDI-MS). The MALDI-MS approach requires a simple analysis workflow (no lipid extraction) and few samples (two or three oocytes per analysis in this work) providing concomitant profiles of both intact phospholipids such as sphingomyelins (SM) and phosphatidylcholines (PC) as well as triacylglycerols (TAG). The lipids were detected in oocytes by MALDI using dihydroxybenzoic acid (DHB) as the matrix. The most abundant lipid present in the MS profiles of bitch and queen oocytes was a PC containing 34 carbons and one unsaturation [PC (34:1)]. Oocytes of these two species are characterized by differences in PC and TAG profiles detected qualitatively as well as by means of principal component analysis (PCA). Cat oocytes were mainly discriminated by more intense C52 and C54 TAG species and a higher number of unsaturations, indicating predominantly linoleic and oleic fatty acyl residues. Comparison of the lipid profile of bitch and queen oocytes with that of bovine oocytes revealed some similarities and also some species specificity: TAG species present in bovine oocytes were also present in bitches and queens; however, a more pronounced contribution of palmitic, stearic and oleic fatty acid residues was noticed in the lipid profile of bovine oocytes. MALDI-MS provides novel information on chemical lipid composition in canine and feline oocytes, offering a suitable tool to concomitantly monitor, in a nearly direct and simple fashion the composition of phospholipids and TAG. This detailed information is highly needed to the development of improved protocols for in vitro culture and cryopreservation of cat and dog oocytes.
© 2012 Blackwell Verlag GmbH.

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Year:  2012        PMID: 23279478     DOI: 10.1111/rda.12003

Source DB:  PubMed          Journal:  Reprod Domest Anim        ISSN: 0936-6768            Impact factor:   2.005


  9 in total

1.  Lipid Droplet Phase Transition in Freezing Cat Embryos and Oocytes Probed by Raman Spectroscopy.

Authors:  Konstantin A Okotrub; Valentina I Mokrousova; Sergei Ya Amstislavsky; Nikolay V Surovtsev
Journal:  Biophys J       Date:  2018-06-20       Impact factor: 4.033

2.  Fatty acid synthesis and oxidation in cumulus cells support oocyte maturation in bovine.

Authors:  Laura Sanchez-Lazo; Daphné Brisard; Sébastien Elis; Virginie Maillard; Rustem Uzbekov; Valérie Labas; Alice Desmarchais; Pascal Papillier; Philippe Monget; Svetlana Uzbekova
Journal:  Mol Endocrinol       Date:  2014-07-24

3.  MALDI Mass Spectrometry Imaging of Lipids and Gene Expression Reveals Differences in Fatty Acid Metabolism between Follicular Compartments in Porcine Ovaries.

Authors:  Svetlana Uzbekova; Sebastien Elis; Ana-Paula Teixeira-Gomes; Alice Desmarchais; Virginie Maillard; Valerie Labas
Journal:  Biology (Basel)       Date:  2015-03-06

4.  Effects of Different Maturation Systems on Bovine Oocyte Quality, Plasma Membrane Phospholipid Composition and Resistance to Vitrification and Warming.

Authors:  José F W Sprícigo; Mateus N Diógenes; Ligiane O Leme; Ana L Guimarães; Carolle V Muterlle; Bianca Damiani Marques Silva; David Solà-Oriol; Ivo Pivato; Luciano Paulino Silva; Margot A N Dode
Journal:  PLoS One       Date:  2015-06-24       Impact factor: 3.240

5.  Fatty acid induced lipolysis influences embryo development, gene expression and lipid droplet formation in the porcine cumulus cells†.

Authors:  Piotr Pawlak; Natalia Malyszka; Izabela Szczerbal; Pawel Kolodziejski
Journal:  Biol Reprod       Date:  2020-06-23       Impact factor: 4.285

6.  Trends in Small Animal Reproduction: A Bibliometric Analysis of the Literature.

Authors:  Penelope Banchi; Ada Rota; Alessia Bertero; Guillaume Domain; Hiba Ali Hassan; Joke Lannoo; Ann Van Soom
Journal:  Animals (Basel)       Date:  2022-01-29       Impact factor: 2.752

7.  Analysis of the phospholipid profile of metaphase II mouse oocytes undergoing vitrification.

Authors:  Jaehun Jung; Hyejin Shin; Soyoung Bang; Hyuck Jun Mok; Chang Suk Suh; Kwang Pyo Kim; Hyunjung Jade Lim
Journal:  PLoS One       Date:  2014-07-17       Impact factor: 3.240

8.  Lipid Identification and Transcriptional Analysis of Controlling Enzymes in Bovine Ovarian Follicle.

Authors:  Priscila Silvana Bertevello; Ana-Paula Teixeira-Gomes; Alexandre Seyer; Anaïs Vitorino Carvalho; Valérie Labas; Marie-Claire Blache; Charles Banliat; Luiz Augusto Vieira Cordeiro; Veronique Duranthon; Pascal Papillier; Virginie Maillard; Sebastien Elis; Svetlana Uzbekova
Journal:  Int J Mol Sci       Date:  2018-10-20       Impact factor: 5.923

Review 9.  Canid Reproductive Biology: Norm and Unique Aspects in Strategies and Mechanisms.

Authors:  Jennifer B Nagashima; Nucharin Songsasen
Journal:  Animals (Basel)       Date:  2021-03-01       Impact factor: 2.752

  9 in total

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